Thermal Stress Analysis of Composite Beams, Plates and Shells: Computational Modelling and Applications presents classic and advanced thermal stress topics in a cutting-edge review of this critical area, tackling subjects that have little coverage in existing resources. It includes discussions of complex problems, such as multi-layered cases using modern advanced computational and vibrational methods. Authors Carrera and Fazzolari begin with a review of the fundamentals of thermoelasticity and thermal stress analysis relating to advanced structures and the basic mechanics of beams, plates, and shells, making the book a self-contained reference. More challenging topics are then addressed, including anisotropic thermal stress structures, static and dynamic responses of coupled and uncoupled thermoelastic problems, thermal buckling, and post-buckling behavior of thermally loaded structures, and thermal effects on panel flutter phenomena, amongst others.

Thermal stress analysis of composite beams, plates and shells: Computational modelling and applications / Carrera, E.; Fazzolari, F. A.; Cinefra, M. - In: Thermal Stress Analysis of Composite Beams, Plates and Shells: Computational Modelling and Applications[s.l] : Elsevier Inc., 2016. - pp. 1-408

Thermal stress analysis of composite beams, plates and shells: Computational modelling and applications

Cinefra M.
2016-01-01

Abstract

Thermal Stress Analysis of Composite Beams, Plates and Shells: Computational Modelling and Applications presents classic and advanced thermal stress topics in a cutting-edge review of this critical area, tackling subjects that have little coverage in existing resources. It includes discussions of complex problems, such as multi-layered cases using modern advanced computational and vibrational methods. Authors Carrera and Fazzolari begin with a review of the fundamentals of thermoelasticity and thermal stress analysis relating to advanced structures and the basic mechanics of beams, plates, and shells, making the book a self-contained reference. More challenging topics are then addressed, including anisotropic thermal stress structures, static and dynamic responses of coupled and uncoupled thermoelastic problems, thermal buckling, and post-buckling behavior of thermally loaded structures, and thermal effects on panel flutter phenomena, amongst others.
2016
Thermal Stress Analysis of Composite Beams, Plates and Shells: Computational Modelling and Applications
Elsevier Inc.
Thermal stress analysis of composite beams, plates and shells: Computational modelling and applications / Carrera, E.; Fazzolari, F. A.; Cinefra, M. - In: Thermal Stress Analysis of Composite Beams, Plates and Shells: Computational Modelling and Applications[s.l] : Elsevier Inc., 2016. - pp. 1-408
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Utilizza questo identificativo per citare o creare un link a questo documento: https://hdl.handle.net/11589/262490
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